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Reliability of rare-earth-doped infrared luminescent nanothermometers

机译:掺稀土红外的可靠性发光nanothermometers

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摘要

The use of infrared-emitting rare-earth-doped luminescent nanoparticles as nanothermometers has attracted great attention during the last few years. The scientific community has identified rare-earth-doped luminescent nanoparticles as one of the most sensitive and versatile systems for contactless local temperature sensing in a great variety of fields, but especially in nanomedicine. Researchers are nowadays focused on the design and development of multifunctional nanothermometers with new spectral operation ranges, outstanding brightness, and enhanced sensitivities. However, no attention has been paid to the assessment of the actual reliability of the measurements provided by rare-earth-doped luminescent nanothermometers. In fact, it is assumed that they are ideal temperature sensors. Nevertheless, this is far from being true. In this work we demonstrate that the emission spectra of rare-earth-doped nanothermometers can be affected by numerous environmental and experimental factors. These include the numerical aperture of the optical elements used for their optical excitation and luminescence collection, the local concentration of nanothermometers, optical length variations, self-absorption of the luminescence by the nanothermometers themselves, and solvent optical absorption. This work concludes that rare-earth-doped luminescent nanothermometers are not as reliable as thought and, consequently, special care has to be taken when extracting temperature estimations from the variation of their emission spectra.
机译:使用红外线发光掺稀土发光纳米粒子作为nanothermometers在过去的几个引起了极大关注年。掺稀土发光纳米粒子最敏感的和通用的系统非接触式当地温度传感的各种各样的领域,特别是在纳米。多功能的设计和开发nanothermometers新的光谱操作范围,杰出的亮度,和增强敏感问题。的评估实际的可靠性提供的测量掺稀土发光nanothermometers。认为他们是理想的温度传感器。然而,远非如此。这项工作我们证明发射光谱掺稀土nanothermometers即可受到许多环境和影响实验因素。孔径的光学元素用于他们光激励发光集合,当地nanothermometers浓度,光学长度变化,专心致致的nanothermometers自己发光的,和溶剂光学吸收。得出结论:掺稀土发光nanothermometers并不像人们想象的那样可靠因此,必须特别注意当提取温度的估计发射光谱的变化。

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